Anti-Candida activity and in vitro toxicity screening of antifungals complexed with ß-cyclodextrin.
J Appl Toxicol
; 44(5): 747-755, 2024 05.
Article
in En
| MEDLINE
| ID: mdl-38198744
ABSTRACT
The emergence of resistant fungal species and the toxicity of currently available antifungal drugs are relevant issues that require special consideration. Cyclodextrins inclusion complexes could optimize the antimicrobial activity of such drugs and create a controlled release system with few side effects. This study aimed to assess the in vitro toxicity and antifungal effectiveness of nystatin (Nys) and chlorhexidine (Chx) complexed or not with ß-cyclodextrin (ßCD). First, a drug toxicity screening was performed through the Artemia salina bioassay. Then, the minimum inhibitory concentrations (MICs) against Candida albicans were determined with the broth microdilution test. After MICs determination, the cytotoxicity of the drugs was evaluated through the methyl-thiazolyl-tetrazolium (MTT) and neutral red (NR) assays and through cell morphology analysis. The PROBIT analysis was used to determine the median lethal concentration (LC50), and the cell viability values were submitted to one-way analysis of variance(ANOVA)/Tukey (α = 0.05). Overall, the ßCD-complexed antifungals were less toxic against A. salina than their raw forms, suggesting that inclusion complexes can reduce the toxicity of drugs. The MICs obtained were as follows Nys 0.5 mg/L; NysßCD 4 mg/L; Chx 4 mg/L; and ChxßCD 8 mg/L. Chx showed significant cytotoxicity (MTT 12.9 ± 9.6%; NR 10.6 ± 12.5%) and promoted important morphological changes. Cells exposed to the other drugs showed viability above 70% with no cellular damage. These results suggest that antifungals complexed with ßCD might be a biocompatible option for the treatment of Candida-related infections.
Key words
Full text:
1
Collection:
01-internacional
Database:
MEDLINE
Main subject:
Beta-Cyclodextrins
/
Antifungal Agents
Type of study:
Diagnostic_studies
/
Screening_studies
Language:
En
Journal:
J Appl Toxicol
Year:
2024
Document type:
Article
Affiliation country:
Brazil
Country of publication:
United kingdom